Nova Patents
US5023944A

Optical resonator structures

Claim Score by NHIP

Read claim 10, the broadest

Abstract

At least one optical resonator having a selected optical processing property is formed upon a substrate. Various property resonators may be stacked upon one another so as to share a common optical axis. A resonator typically has a pair of multilayer dielectric or semiconductor mirrors formed on opposite ends of an optical cavity with the mirrors formed in a plane parallel to the substrate surface. Temperature and mechanical stability superior to current technology is thus achievable in the structure. Additional combinations of mirrors, cavities and gratings may be formed in conjunction with the resonator.

Term

Term ended

Expired 5 September 2009, 17.1 years ago.

  1. Priority and filed
  2. Granted
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  4. Today

18 claims: 10 independent, 8 dependent

  1. 1
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;wherein at least one of said optical components comprises a surface emitting laser for generating said optical signals;andwherein at least one other of said optical components forms a Fabry-Perot resonator optically coupled to said surface emitting laser comprising:an optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths;a first and second multi-layer mirror disposed on opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said first and second multi-layer mirrors form surfaces substantially parallel to one another;andwherein said other optical component cavity is formed primarily of a semiconductor material having an optical response of a saturable absorber, said other optical component for mode locking of a plurality of optical modes generated by said surface emitting laser.
  2. 2
    An integrated optical device appropriate for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are closely aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;wherein at least one of said optical components comprises a surface emitting laser for generating said optical signals;andwherein at least one other of said optical components forms a Fabry-Perot resonator optically coupled to said surface emitting laser comprising;an optical cavity having dimensions to facilitate the propagation of an optical signal at selected optical wavelengths;a first and second multi-layer mirror disposed on opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said first and second multi-layer mirrors form surfaces substantially parallel to one another;andwherein said other optical component cavity comprises a semiconductor material having an optical response of an electro-absorption media, said other optical component for modulating said optical signal generated by said surface emitting laser.
  3. 3
    An integrated optical device appropriate for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are closely aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;wherein at least one of said optical components comprises a surface emitting laser for generating said optical signals;andwherein at least one other of said optical components forms a Fabry-Perot resonator optically coupled to said surface emitting laser comprising:an optical cavity having dimensions to facilitate the propagation of an optical signal at selected optical wavelengths;a first and second multi-layer mirror disposed on opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said first and second multi-layer mirrors form surfaces substantially parallel to one another;andwherein said other optical component comprises a semiconductor material being optically bistable.
  4. 4
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;andwherein said optical components comprise first and second optical resonators coupled together in back-to-back relationship, each of said resonators comprising:an optical cavity having dimensions to permit resonance of an optical signal at a plurality of selected optical wavelengths;first and second mirrors covering opposite sides of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said first and second mirrors form surfaces substantially parallel to one another;andwherein said first and second resonators are configured to resonate at different optical frequencies and wherein said first or second resonator is transparent to the optical signal frequency of the other said second or first resonator.
  5. 10
    Broadest claimClaim Score 65, broad(NHIP)An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;andwherein at least one of said optical components comprises demodulator means for converting a frequency-modulated optical signal to a corresponding amplitude-modulated electrical signal.
  6. 12
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming the top of said stack;andwherein at least one of said optical components comprises an external grating feedback surface emitting laser for emitting a frequency stabilized optical signal comprising:an active optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths;first and second multi-layer mirrors disposed on opposite ends of said optical cavity for reflecting selected optical wavelengths within said optical cavity, whereby said first and second mirrors form surfaces substantially parallel to one another such that said first and second mirrors together with said optical cavity form a Fabry-Perot resonator;anda grating feedback layer parallel and intimately adjacent to one of said first and second mirrors for reflecting a selected optical wavelength into said resonator, said feedback layer having periodically varying index of refraction.
  7. 15
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming at the top of said stack;andwherein at least one of said optical components comprises an optical resonator comprising:an optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths;first and second multi-layer mirrors respectively disposed upon opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said multi-layer mirrors form surfaces which are substantially parallel to one another;andcontrol means coupled to said first mirror for electrically controlling the index of refraction of said first mirror.
  8. 16
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface formed at the top of said stack;andwherein at least one of said optical components comprises an optical resonator comprising:an optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths, said optical cavity comprising a plurality of quantum wells formed therein wherein the distance separating said quantum wells varies sinusoidly vertically throughout said optical cavity;andfirst and second multi-layer mirrors respectively disposed upon opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said multi-layer mirrors form surfaces which are substantially parallel to one another.
  9. 17
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming at the top of said stack;wherein at least one of said optical components comprises an optical resonator comprising:an optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths, said optical cavity comprising a plurality of quantum wells formed therein wherein groups of a selected number of said quantum wells are evenly spaced vertically throughout said optical cavity and wherein the index of refraction of the regions within said optical cavity separating said groups of quantum wells varies smoothly to a selected value midway between said groups;andfirst and second multi-layer mirrors respectively disposed upon opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said multi-layer mirrors form surfaces which are substantially parallel to one another.
  10. 18
    An integrated optical device for use in communications and computation systems employing signals of optical frequency comprising:a plurality of optical components fabricated monolithically in a stack upon a substrate, each of said components processing optical signals;wherein said optical components are stacked parallel and intimately adjacent to one another such that they each are aligned with a common optical axis which is substantially perpendicular to the surface forming at the top of said stack;wherein at least one of said optical components comprises an optical resonator comprising:an optical cavity having dimensions to permit resonance of an optical signal at selected optical wavelengths comprising said optical cavity a plurality of quantum wells formed therein wherein groups of a selected number of said quantum wells are evenly spaced vertically throughout said optical cavity and wherein the index of refraction of regions of said optical cavities separating said quantum wells is different than the refraction index of said quantum wells, and is constant throughout said optical cavity;andfirst and second multilayer mirrors respectively disposed upon opposite ends of said optical cavity for reflecting selected wavelengths of light within said optical cavity, wherein said multi-layer mirrors form surfaces which are substantially parallel to one another.